Part number: XC3S1200E-5FTG256C-4I
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XC3S1200E-5FTG256C-4I Component Specifications
General Information: The XC3S1200E-5FTG256C-4I is a highly advanced programmable logic device (PLD) designed for cutting-edge applications in the electronics and semiconductor industries. Renowned for its exceptional performance and versatility, this component offers a wide range of capabilities for complex digital systems.
Specifications
- Technology: Utilizes state-of-the-art FPGA technology to provide reconfigurable logic elements, memory blocks, and digital signal processing capabilities for dynamic system designs.
- Configuration: Features a large number of logic cells and programmable interconnects to enable flexible implementation of custom logic functions and algorithms.
- Speed: Operates at high clock frequencies, delivering rapid processing and response times for real-time applications and data-intensive tasks.
- Package Type: Housed in a compact and rugged FTG256C package, ensuring efficient heat dissipation and mechanical robustness in demanding environments.
Applications
- Telecommunications: Ideal for telecommunications infrastructure, networking equipment, and high-speed data processing applications requiring advanced digital processing capabilities.
- Embedded Systems: Commonly used in embedded systems development for industrial automation, IoT devices, and aerospace applications that demand reliable and adaptable processing power.
- Signal Processing: Well-suited for digital signal processing tasks such as image and audio processing, encryption, and filtering in diverse electronic systems.
Compliance
Industry Standards: The XC3S1200E-5FTG256C-4I complies with industry standards for programmable logic devices, ensuring compatibility, reliability, and performance consistency across various applications and environments.
Identification
The designation XC3S1200E-5FTG256C-4I signifies key attributes of the component, including its capacity, speed grade, package type, and configuration details, enabling precise identification and integration into advanced electronic systems.
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